#include "filter_common.h"
#define N_(msgid) msgid
#define STR_ALLOC_SIZE 800
typedef struct {
char *buf;
size_t pos;
} lzma_str;
static lzma_ret
str_init(lzma_str *str, const lzma_allocator *allocator)
{
str->buf = lzma_alloc(STR_ALLOC_SIZE, allocator);
if (str->buf == NULL)
return LZMA_MEM_ERROR;
str->pos = 0;
return LZMA_OK;
}
static void
str_free(lzma_str *str, const lzma_allocator *allocator)
{
lzma_free(str->buf, allocator);
return;
}
static bool
str_is_full(const lzma_str *str)
{
return str->pos == STR_ALLOC_SIZE - 1;
}
static lzma_ret
str_finish(char **dest, lzma_str *str, const lzma_allocator *allocator)
{
if (str_is_full(str)) {
lzma_free(str->buf, allocator);
*dest = NULL;
assert(0);
return LZMA_PROG_ERROR;
}
str->buf[str->pos] = '\0';
*dest = str->buf;
return LZMA_OK;
}
static void
str_append_str(lzma_str *str, const char *s)
{
const size_t len = strlen(s);
const size_t limit = STR_ALLOC_SIZE - 1 - str->pos;
const size_t copy_size = my_min(len, limit);
memcpy(str->buf + str->pos, s, copy_size);
str->pos += copy_size;
return;
}
static void
str_append_u32(lzma_str *str, uint32_t v, bool use_byte_suffix)
{
if (v == 0) {
str_append_str(str, "0");
} else {
static const char suffixes[4][4] = { "", "KiB", "MiB", "GiB" };
size_t suf = 0;
if (use_byte_suffix) {
while ((v & 1023) == 0
&& suf < ARRAY_SIZE(suffixes) - 1) {
v >>= 10;
++suf;
}
}
char buf[16] = "";
size_t pos = sizeof(buf) - 1;
do {
buf[--pos] = '0' + (v % 10);
v /= 10;
} while (v != 0);
str_append_str(str, buf + pos);
str_append_str(str, suffixes[suf]);
}
return;
}
#define NAME_LEN_MAX 11
#define OPTMAP_USE_NAME_VALUE_MAP 0x01
#define OPTMAP_USE_BYTE_SUFFIX 0x02
#define OPTMAP_NO_STRFY_ZERO 0x04
enum {
OPTMAP_TYPE_UINT32,
OPTMAP_TYPE_LZMA_MODE,
OPTMAP_TYPE_LZMA_MATCH_FINDER,
OPTMAP_TYPE_LZMA_PRESET,
};
typedef struct {
const char name[NAME_LEN_MAX + 1];
const uint32_t value;
} name_value_map;
typedef struct {
char name[NAME_LEN_MAX + 1];
uint8_t type;
uint8_t flags;
uint16_t offset;
union {
const name_value_map *map;
struct {
uint32_t min;
uint32_t max;
} range;
} u;
} option_map;
static const char *parse_options(const char **const str, const char *str_end,
void *filter_options,
const option_map *const optmap, const size_t optmap_size);
#if defined(HAVE_ENCODER_X86) \
|| defined(HAVE_DECODER_X86) \
|| defined(HAVE_ENCODER_ARM) \
|| defined(HAVE_DECODER_ARM) \
|| defined(HAVE_ENCODER_ARMTHUMB) \
|| defined(HAVE_DECODER_ARMTHUMB) \
|| defined(HAVE_ENCODER_ARM64) \
|| defined(HAVE_DECODER_ARM64) \
|| defined(HAVE_ENCODER_POWERPC) \
|| defined(HAVE_DECODER_POWERPC) \
|| defined(HAVE_ENCODER_IA64) \
|| defined(HAVE_DECODER_IA64) \
|| defined(HAVE_ENCODER_SPARC) \
|| defined(HAVE_DECODER_SPARC) \
|| defined(HAVE_ENCODER_RISCV) \
|| defined(HAVE_DECODER_RISCV)
static const option_map bcj_optmap[] = {
{
.name = "start",
.flags = OPTMAP_NO_STRFY_ZERO | OPTMAP_USE_BYTE_SUFFIX,
.offset = offsetof(lzma_options_bcj, start_offset),
.u.range.min = 0,
.u.range.max = UINT32_MAX,
}
};
static const char *
parse_bcj(const char **const str, const char *str_end, void *filter_options)
{
return parse_options(str, str_end, filter_options,
bcj_optmap, ARRAY_SIZE(bcj_optmap));
}
#endif
#if defined(HAVE_ENCODER_DELTA) || defined(HAVE_DECODER_DELTA)
static const option_map delta_optmap[] = {
{
.name = "dist",
.offset = offsetof(lzma_options_delta, dist),
.u.range.min = LZMA_DELTA_DIST_MIN,
.u.range.max = LZMA_DELTA_DIST_MAX,
}
};
static const char *
parse_delta(const char **const str, const char *str_end, void *filter_options)
{
lzma_options_delta *opts = filter_options;
opts->type = LZMA_DELTA_TYPE_BYTE;
opts->dist = LZMA_DELTA_DIST_MIN;
return parse_options(str, str_end, filter_options,
delta_optmap, ARRAY_SIZE(delta_optmap));
}
#endif
#define LZMA12_PRESET_STR "0-9[e]"
static const char *
parse_lzma12_preset(const char **const str, const char *str_end,
uint32_t *preset)
{
assert(*str < str_end);
if (!(**str >= '0' && **str <= '9'))
return N_("Unsupported preset");
*preset = (uint32_t)(**str - '0');
while (++*str < str_end) {
switch (**str) {
case 'e':
*preset |= LZMA_PRESET_EXTREME;
break;
default:
return N_("Unsupported flag in the preset");
}
}
return NULL;
}
static const char *
set_lzma12_preset(const char **const str, const char *str_end,
void *filter_options)
{
uint32_t preset;
const char *errmsg = parse_lzma12_preset(str, str_end, &preset);
if (errmsg != NULL)
return errmsg;
lzma_options_lzma *opts = filter_options;
if (lzma_lzma_preset(opts, preset))
return N_("Unsupported preset");
return NULL;
}
static const name_value_map lzma12_mode_map[] = {
{ "fast", LZMA_MODE_FAST },
{ "normal", LZMA_MODE_NORMAL },
{ "", 0 }
};
static const name_value_map lzma12_mf_map[] = {
{ "hc3", LZMA_MF_HC3 },
{ "hc4", LZMA_MF_HC4 },
{ "bt2", LZMA_MF_BT2 },
{ "bt3", LZMA_MF_BT3 },
{ "bt4", LZMA_MF_BT4 },
{ "", 0 }
};
static const option_map lzma12_optmap[] = {
{
.name = "preset",
.type = OPTMAP_TYPE_LZMA_PRESET,
}, {
.name = "dict",
.flags = OPTMAP_USE_BYTE_SUFFIX,
.offset = offsetof(lzma_options_lzma, dict_size),
.u.range.min = LZMA_DICT_SIZE_MIN,
.u.range.max = (UINT32_C(1) << 30) + (UINT32_C(1) << 29),
}, {
.name = "lc",
.offset = offsetof(lzma_options_lzma, lc),
.u.range.min = LZMA_LCLP_MIN,
.u.range.max = LZMA_LCLP_MAX,
}, {
.name = "lp",
.offset = offsetof(lzma_options_lzma, lp),
.u.range.min = LZMA_LCLP_MIN,
.u.range.max = LZMA_LCLP_MAX,
}, {
.name = "pb",
.offset = offsetof(lzma_options_lzma, pb),
.u.range.min = LZMA_PB_MIN,
.u.range.max = LZMA_PB_MAX,
}, {
.name = "mode",
.type = OPTMAP_TYPE_LZMA_MODE,
.flags = OPTMAP_USE_NAME_VALUE_MAP,
.offset = offsetof(lzma_options_lzma, mode),
.u.map = lzma12_mode_map,
}, {
.name = "nice",
.offset = offsetof(lzma_options_lzma, nice_len),
.u.range.min = 2,
.u.range.max = 273,
}, {
.name = "mf",
.type = OPTMAP_TYPE_LZMA_MATCH_FINDER,
.flags = OPTMAP_USE_NAME_VALUE_MAP,
.offset = offsetof(lzma_options_lzma, mf),
.u.map = lzma12_mf_map,
}, {
.name = "depth",
.offset = offsetof(lzma_options_lzma, depth),
.u.range.min = 0,
.u.range.max = UINT32_MAX,
}
};
static const char *
parse_lzma12(const char **const str, const char *str_end, void *filter_options)
{
lzma_options_lzma *opts = filter_options;
const bool preset_ret = lzma_lzma_preset(opts, LZMA_PRESET_DEFAULT);
assert(!preset_ret);
(void)preset_ret;
const char *errmsg = parse_options(str, str_end, filter_options,
lzma12_optmap, ARRAY_SIZE(lzma12_optmap));
if (errmsg != NULL)
return errmsg;
if (opts->lc + opts->lp > LZMA_LCLP_MAX)
return N_("The sum of lc and lp must not exceed 4");
return NULL;
}
static const struct {
char name[NAME_LEN_MAX + 1];
uint32_t opts_size;
lzma_vli id;
const char *(*parse)(const char **str, const char *str_end,
void *filter_options);
const option_map *optmap;
uint8_t strfy_encoder;
uint8_t strfy_decoder;
bool allow_null;
} filter_name_map[] = {
#if defined (HAVE_ENCODER_LZMA1) || defined(HAVE_DECODER_LZMA1)
{ "lzma1", sizeof(lzma_options_lzma), LZMA_FILTER_LZMA1,
&parse_lzma12, lzma12_optmap, 9, 5, false },
#endif
#if defined(HAVE_ENCODER_LZMA2) || defined(HAVE_DECODER_LZMA2)
{ "lzma2", sizeof(lzma_options_lzma), LZMA_FILTER_LZMA2,
&parse_lzma12, lzma12_optmap, 9, 2, false },
#endif
#if defined(HAVE_ENCODER_X86) || defined(HAVE_DECODER_X86)
{ "x86", sizeof(lzma_options_bcj), LZMA_FILTER_X86,
&parse_bcj, bcj_optmap, 1, 1, true },
#endif
#if defined(HAVE_ENCODER_ARM) || defined(HAVE_DECODER_ARM)
{ "arm", sizeof(lzma_options_bcj), LZMA_FILTER_ARM,
&parse_bcj, bcj_optmap, 1, 1, true },
#endif
#if defined(HAVE_ENCODER_ARMTHUMB) || defined(HAVE_DECODER_ARMTHUMB)
{ "armthumb", sizeof(lzma_options_bcj), LZMA_FILTER_ARMTHUMB,
&parse_bcj, bcj_optmap, 1, 1, true },
#endif
#if defined(HAVE_ENCODER_ARM64) || defined(HAVE_DECODER_ARM64)
{ "arm64", sizeof(lzma_options_bcj), LZMA_FILTER_ARM64,
&parse_bcj, bcj_optmap, 1, 1, true },
#endif
#if defined(HAVE_ENCODER_RISCV) || defined(HAVE_DECODER_RISCV)
{ "riscv", sizeof(lzma_options_bcj), LZMA_FILTER_RISCV,
&parse_bcj, bcj_optmap, 1, 1, true },
#endif
#if defined(HAVE_ENCODER_POWERPC) || defined(HAVE_DECODER_POWERPC)
{ "powerpc", sizeof(lzma_options_bcj), LZMA_FILTER_POWERPC,
&parse_bcj, bcj_optmap, 1, 1, true },
#endif
#if defined(HAVE_ENCODER_IA64) || defined(HAVE_DECODER_IA64)
{ "ia64", sizeof(lzma_options_bcj), LZMA_FILTER_IA64,
&parse_bcj, bcj_optmap, 1, 1, true },
#endif
#if defined(HAVE_ENCODER_SPARC) || defined(HAVE_DECODER_SPARC)
{ "sparc", sizeof(lzma_options_bcj), LZMA_FILTER_SPARC,
&parse_bcj, bcj_optmap, 1, 1, true },
#endif
#if defined(HAVE_ENCODER_DELTA) || defined(HAVE_DECODER_DELTA)
{ "delta", sizeof(lzma_options_delta), LZMA_FILTER_DELTA,
&parse_delta, delta_optmap, 1, 1, false },
#endif
};
static const char *
parse_options(const char **const str, const char *str_end,
void *filter_options,
const option_map *const optmap, const size_t optmap_size)
{
while (*str < str_end && **str != '\0') {
if (**str == ',') {
++*str;
continue;
}
const size_t str_len = (size_t)(str_end - *str);
const char *name_eq_value_end = memchr(*str, ',', str_len);
if (name_eq_value_end == NULL)
name_eq_value_end = str_end;
const char *equals_sign = memchr(*str, '=',
(size_t)(name_eq_value_end - *str));
if (equals_sign == NULL || **str == '=')
return N_("Options must be 'name=value' pairs "
"separated with commas");
const size_t name_len = (size_t)(equals_sign - *str);
if (name_len > NAME_LEN_MAX)
return N_("Unknown option name");
size_t i = 0;
while (true) {
if (i == optmap_size)
return N_("Unknown option name");
if (memcmp(*str, optmap[i].name, name_len) == 0
&& optmap[i].name[name_len] == '\0')
break;
++i;
}
*str = equals_sign + 1;
const size_t value_len = (size_t)(name_eq_value_end - *str);
if (value_len == 0)
return N_("Option value cannot be empty");
if (optmap[i].type == OPTMAP_TYPE_LZMA_PRESET) {
const char *errmsg = set_lzma12_preset(str,
name_eq_value_end, filter_options);
if (errmsg != NULL)
return errmsg;
continue;
}
uint32_t v;
if (optmap[i].flags & OPTMAP_USE_NAME_VALUE_MAP) {
if (value_len > NAME_LEN_MAX)
return N_("Invalid option value");
const name_value_map *map = optmap[i].u.map;
size_t j = 0;
while (true) {
if (map[j].name[0] == '\0')
return N_("Invalid option value");
if (memcmp(*str, map[j].name, value_len) == 0
&& map[j].name[value_len]
== '\0') {
v = map[j].value;
break;
}
++j;
}
} else if (**str < '0' || **str > '9') {
return N_("Value is not a non-negative "
"decimal integer");
} else {
const char *p = *str;
v = 0;
do {
if (v > UINT32_MAX / 10)
return N_("Value out of range");
v *= 10;
const uint32_t add = (uint32_t)(*p - '0');
if (UINT32_MAX - add < v)
return N_("Value out of range");
v += add;
++p;
} while (p < name_eq_value_end
&& *p >= '0' && *p <= '9');
if (p < name_eq_value_end) {
const char *multiplier_start = p;
if ((optmap[i].flags & OPTMAP_USE_BYTE_SUFFIX)
== 0) {
*str = multiplier_start;
return N_("This option does not "
"support any multiplier "
"suffixes");
}
uint32_t shift;
switch (*p) {
case 'k':
case 'K':
shift = 10;
break;
case 'm':
case 'M':
shift = 20;
break;
case 'g':
case 'G':
shift = 30;
break;
default:
*str = multiplier_start;
return N_("Invalid multiplier suffix "
"(KiB, MiB, or GiB)");
}
++p;
if (p < name_eq_value_end && *p == 'i')
++p;
if (p < name_eq_value_end && *p == 'B')
++p;
if (p < name_eq_value_end) {
*str = multiplier_start;
return N_("Invalid multiplier suffix "
"(KiB, MiB, or GiB)");
}
if (v > (UINT32_MAX >> shift))
return N_("Value out of range");
v <<= shift;
}
if (v < optmap[i].u.range.min
|| v > optmap[i].u.range.max)
return N_("Value out of range");
}
void *ptr = (char *)filter_options + optmap[i].offset;
switch (optmap[i].type) {
case OPTMAP_TYPE_LZMA_MODE:
*(lzma_mode *)ptr = (lzma_mode)v;
break;
case OPTMAP_TYPE_LZMA_MATCH_FINDER:
*(lzma_match_finder *)ptr = (lzma_match_finder)v;
break;
default:
*(uint32_t *)ptr = v;
break;
}
*str = name_eq_value_end;
}
return NULL;
}
static const char *
parse_filter(const char **const str, const char *str_end, lzma_filter *filter,
const lzma_allocator *allocator, bool only_xz)
{
const char *name_end = str_end;
const char *opts_start = str_end;
for (const char *p = *str; p < str_end; ++p) {
if (*p == ':' || *p == '=') {
name_end = p;
opts_start = p + 1;
break;
}
}
const size_t name_len = (size_t)(name_end - *str);
if (name_len > NAME_LEN_MAX)
return N_("Unknown filter name");
for (size_t i = 0; i < ARRAY_SIZE(filter_name_map); ++i) {
if (memcmp(*str, filter_name_map[i].name, name_len) == 0
&& filter_name_map[i].name[name_len] == '\0') {
if (only_xz && filter_name_map[i].id
>= LZMA_FILTER_RESERVED_START)
return N_("This filter cannot be used in "
"the .xz format");
void *options = lzma_alloc_zero(
filter_name_map[i].opts_size,
allocator);
if (options == NULL)
return N_("Memory allocation failed");
*str = opts_start;
const char *errmsg = filter_name_map[i].parse(
str, str_end, options);
if (errmsg != NULL) {
lzma_free(options, allocator);
return errmsg;
}
filter->id = filter_name_map[i].id;
filter->options = options;
return NULL;
}
}
return N_("Unknown filter name");
}
static const char *
str_to_filters(const char **const str, lzma_filter *filters, uint32_t flags,
const lzma_allocator *allocator)
{
const char *errmsg;
while (**str == ' ')
++*str;
if (**str == '\0')
return N_("Empty string is not allowed, "
"try '6' if a default value is needed");
#define MY_IS_DIGIT(c) ((c) >= '0' && (c) <= '9')
if (MY_IS_DIGIT(**str) || (**str == '-' && MY_IS_DIGIT((*str)[1]))) {
if (**str == '-')
++*str;
const size_t str_len = strlen(*str);
const char *str_end = memchr(*str, ' ', str_len);
if (str_end != NULL) {
for (size_t i = 1; str_end[i] != '\0'; ++i)
if (str_end[i] != ' ')
return N_("Unsupported preset");
} else {
str_end = *str + str_len;
}
uint32_t preset;
errmsg = parse_lzma12_preset(str, str_end, &preset);
if (errmsg != NULL)
return errmsg;
lzma_options_lzma *opts = lzma_alloc(sizeof(*opts), allocator);
if (opts == NULL)
return N_("Memory allocation failed");
if (lzma_lzma_preset(opts, preset)) {
lzma_free(opts, allocator);
return N_("Unsupported preset");
}
filters[0].id = LZMA_FILTER_LZMA2;
filters[0].options = opts;
filters[1].id = LZMA_VLI_UNKNOWN;
filters[1].options = NULL;
return NULL;
}
const bool only_xz = (flags & LZMA_STR_ALL_FILTERS) == 0;
lzma_filter temp_filters[LZMA_FILTERS_MAX + 1];
size_t i = 0;
do {
if (i == LZMA_FILTERS_MAX) {
errmsg = N_("The maximum number of filters is four");
goto error;
}
if ((*str)[0] == '-' && (*str)[1] == '-')
*str += 2;
const char *filter_end = *str;
while (filter_end[0] != '\0') {
if ((filter_end[0] == '-' && filter_end[1] == '-')
|| filter_end[0] == ' ')
break;
++filter_end;
}
if (filter_end == *str) {
errmsg = N_("Filter name is missing");
goto error;
}
errmsg = parse_filter(str, filter_end, &temp_filters[i],
allocator, only_xz);
if (errmsg != NULL)
goto error;
while (**str == ' ')
++*str;
++i;
} while (**str != '\0');
temp_filters[i].id = LZMA_VLI_UNKNOWN;
temp_filters[i].options = NULL;
if ((flags & LZMA_STR_NO_VALIDATION) == 0) {
size_t dummy;
const lzma_ret ret = lzma_validate_chain(temp_filters, &dummy);
assert(ret == LZMA_OK || ret == LZMA_OPTIONS_ERROR);
if (ret != LZMA_OK) {
errmsg = N_("Invalid filter chain "
"('lzma2' missing at the end?)");
goto error;
}
}
memcpy(filters, temp_filters, (i + 1) * sizeof(lzma_filter));
return NULL;
error:
while (i-- > 0)
lzma_free(temp_filters[i].options, allocator);
return errmsg;
}
extern LZMA_API(const char *)
lzma_str_to_filters(const char *str, int *error_pos, lzma_filter *filters,
uint32_t flags, const lzma_allocator *allocator)
{
if (error_pos != NULL)
*error_pos = 0;
if (str == NULL || filters == NULL) {
return "Unexpected NULL pointer argument(s) "
"to lzma_str_to_filters()";
}
const uint32_t supported_flags
= LZMA_STR_ALL_FILTERS
| LZMA_STR_NO_VALIDATION;
if (flags & ~supported_flags) {
return "Unsupported flags to lzma_str_to_filters()";
}
const char *used = str;
const char *errmsg = str_to_filters(&used, filters, flags, allocator);
if (error_pos != NULL) {
const size_t n = (size_t)(used - str);
*error_pos = n > INT_MAX ? INT_MAX : (int)n;
}
return errmsg;
}
static void
strfy_filter(lzma_str *dest, const char *delimiter,
const option_map *optmap, size_t optmap_count,
const void *filter_options)
{
for (size_t i = 0; i < optmap_count; ++i) {
if (optmap[i].type == OPTMAP_TYPE_LZMA_PRESET)
continue;
uint32_t v;
const void *ptr
= (const char *)filter_options + optmap[i].offset;
switch (optmap[i].type) {
case OPTMAP_TYPE_LZMA_MODE:
v = *(const lzma_mode *)ptr;
break;
case OPTMAP_TYPE_LZMA_MATCH_FINDER:
v = *(const lzma_match_finder *)ptr;
break;
default:
v = *(const uint32_t *)ptr;
break;
}
if (v == 0 && (optmap[i].flags & OPTMAP_NO_STRFY_ZERO))
continue;
str_append_str(dest, delimiter);
delimiter = ",";
str_append_str(dest, optmap[i].name);
str_append_str(dest, "=");
if (optmap[i].flags & OPTMAP_USE_NAME_VALUE_MAP) {
const name_value_map *map = optmap[i].u.map;
size_t j = 0;
while (true) {
if (map[j].name[0] == '\0') {
str_append_str(dest, "UNKNOWN");
break;
}
if (map[j].value == v) {
str_append_str(dest, map[j].name);
break;
}
++j;
}
} else {
str_append_u32(dest, v,
optmap[i].flags & OPTMAP_USE_BYTE_SUFFIX);
}
}
return;
}
extern LZMA_API(lzma_ret)
lzma_str_from_filters(char **output_str, const lzma_filter *filters,
uint32_t flags, const lzma_allocator *allocator)
{
if (output_str == NULL)
return LZMA_PROG_ERROR;
*output_str = NULL;
if (filters == NULL)
return LZMA_PROG_ERROR;
const uint32_t supported_flags
= LZMA_STR_ENCODER
| LZMA_STR_DECODER
| LZMA_STR_GETOPT_LONG
| LZMA_STR_NO_SPACES;
if (flags & ~supported_flags)
return LZMA_OPTIONS_ERROR;
if (filters[0].id == LZMA_VLI_UNKNOWN)
return LZMA_OPTIONS_ERROR;
lzma_str dest;
return_if_error(str_init(&dest, allocator));
const bool show_opts = (flags & (LZMA_STR_ENCODER | LZMA_STR_DECODER));
const char *opt_delim = (flags & LZMA_STR_GETOPT_LONG) ? "=" : ":";
for (size_t i = 0; filters[i].id != LZMA_VLI_UNKNOWN; ++i) {
if (i == LZMA_FILTERS_MAX) {
str_free(&dest, allocator);
return LZMA_OPTIONS_ERROR;
}
if (i > 0 && !(flags & LZMA_STR_NO_SPACES))
str_append_str(&dest, " ");
if ((flags & LZMA_STR_GETOPT_LONG)
|| (i > 0 && (flags & LZMA_STR_NO_SPACES)))
str_append_str(&dest, "--");
size_t j = 0;
while (true) {
if (j == ARRAY_SIZE(filter_name_map)) {
str_free(&dest, allocator);
return LZMA_OPTIONS_ERROR;
}
if (filter_name_map[j].id == filters[i].id) {
str_append_str(&dest, filter_name_map[j].name);
if (!show_opts)
break;
if (filters[i].options == NULL) {
if (!filter_name_map[j].allow_null) {
str_free(&dest, allocator);
return LZMA_OPTIONS_ERROR;
}
break;
}
const size_t optmap_count
= (flags & LZMA_STR_ENCODER)
? filter_name_map[j].strfy_encoder
: filter_name_map[j].strfy_decoder;
strfy_filter(&dest, opt_delim,
filter_name_map[j].optmap,
optmap_count,
filters[i].options);
break;
}
++j;
}
}
return str_finish(output_str, &dest, allocator);
}
extern LZMA_API(lzma_ret)
lzma_str_list_filters(char **output_str, lzma_vli filter_id, uint32_t flags,
const lzma_allocator *allocator)
{
if (output_str == NULL)
return LZMA_PROG_ERROR;
*output_str = NULL;
const uint32_t supported_flags
= LZMA_STR_ALL_FILTERS
| LZMA_STR_ENCODER
| LZMA_STR_DECODER
| LZMA_STR_GETOPT_LONG;
if (flags & ~supported_flags)
return LZMA_OPTIONS_ERROR;
lzma_str dest;
return_if_error(str_init(&dest, allocator));
const bool show_opts = (flags & (LZMA_STR_ENCODER | LZMA_STR_DECODER));
const char *filter_delim = show_opts ? "\n" : " ";
const char *opt_delim = (flags & LZMA_STR_GETOPT_LONG) ? "=" : ":";
bool first_filter_printed = false;
for (size_t i = 0; i < ARRAY_SIZE(filter_name_map); ++i) {
if (filter_id != LZMA_VLI_UNKNOWN
&& filter_id != filter_name_map[i].id)
continue;
if (filter_name_map[i].id >= LZMA_FILTER_RESERVED_START
&& (flags & LZMA_STR_ALL_FILTERS) == 0
&& filter_id == LZMA_VLI_UNKNOWN)
continue;
if (first_filter_printed)
str_append_str(&dest, filter_delim);
first_filter_printed = true;
if (flags & LZMA_STR_GETOPT_LONG)
str_append_str(&dest, "--");
str_append_str(&dest, filter_name_map[i].name);
if (!show_opts)
continue;
const option_map *optmap = filter_name_map[i].optmap;
const char *d = opt_delim;
const size_t end = (flags & LZMA_STR_ENCODER)
? filter_name_map[i].strfy_encoder
: filter_name_map[i].strfy_decoder;
for (size_t j = 0; j < end; ++j) {
str_append_str(&dest, d);
d = ",";
str_append_str(&dest, optmap[j].name);
str_append_str(&dest, "=<");
if (optmap[j].type == OPTMAP_TYPE_LZMA_PRESET) {
str_append_str(&dest, LZMA12_PRESET_STR);
} else if (optmap[j].flags
& OPTMAP_USE_NAME_VALUE_MAP) {
const name_value_map *m = optmap[j].u.map;
for (size_t k = 0; m[k].name[0] != '\0'; ++k) {
if (k > 0)
str_append_str(&dest, "|");
str_append_str(&dest, m[k].name);
}
} else {
const bool use_byte_suffix = optmap[j].flags
& OPTMAP_USE_BYTE_SUFFIX;
str_append_u32(&dest, optmap[j].u.range.min,
use_byte_suffix);
str_append_str(&dest, "-");
str_append_u32(&dest, optmap[j].u.range.max,
use_byte_suffix);
}
str_append_str(&dest, ">");
}
}
if (!first_filter_printed) {
str_free(&dest, allocator);
return LZMA_OPTIONS_ERROR;
}
return str_finish(output_str, &dest, allocator);
}